The lifesaving system for buildings of the present invention includes a tubular device having opened crowns or circular radial curved crowns attached to an inside wall of the tubular device, the crowns having flexible vanes or fins through which inverted bell-shaped elements pass, the elements larger in size than the inner size of the crowns, and are braked or slowed as they move downwards, a foam rubber element added at an end of the tubular device, and an annular element having an outside perimeter forming a tapered cone and curved, and which adapts to a top of a user's chest and is positionable under user's armpits.
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1. A lifesaving system for buildings comprising:
a tubular device having opened crowns or circular radial curved crowns attached to an inside wall of said tubular device, wherein said crowns include flexible vanes or fins through which inverted bell-shaped elements pass, said elements larger in size than an inner size of said crowns, said elements braked or slowed as they move downwards,
a foam rubber element at an end of said tubular device; and
an annular element having an outside perimeter forming a tapered cone and curved, and which adapts to the top a user's the chest and is positionable under said user's armpits.
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This application claims the priority date of Spanish Patent P200302042 filed on Aug. 13, 2003. The basis for priority in this case is the Paris Convention for the Protection of Industrial Property (613 O.G. 23,53 Stat 1748). The Spanish patent application was filed in The Official Patent and Trademarks Office of Spain.
The present invention relates to the rescue of people from buildings due to fire, smoke, and other dangerous conditions.
There are at present no devices for saving people trapped in buildings, particularly in tall buildings where external resources cannot be used.
The lifesaving system for buildings in the present invention consists of a tubular device which can be opened lengthwise and laterally, with opened crowns or circular radial curved crowns attached to the inside wall, having on the inside of the crowns flexible vanes or fins through which inverted bell-form elements pass, the elements somewhat larger in size than the inner size of the crowns, the elements braked or slowed as they move downwards, with the persons, animals or objects descending inside them.
The tubular device may be rigid or foldable, made of fabric or of three or more cords carrying rings which in turn hold the vanes or fins crowns.
The tubular device and crown may be of circular or elliptical cross-section, and on one variant of the crown, the vanes or fins form two ellipses for the fitting of shoes, with an inner hole of somewhat smaller size.
A variant uses an annular element, whose outside perimeter is a tapered cone and curved, and which adapts to the top of the chest, and under the armpits, and a similar element may be adapted around the legs, with an additional central diameter support.
The bell-shaped elements may also have a lug or flange which is flexible or of vane or fin form.
For lesser heights, the ducting can be used on a slope with just the vanes or fins for support of the back or rear. Reinforced trousers may also be used.
At the bottom, the vanes or fins may be closer together or stronger, to further reduce the speed of drop. A foam rubber element may be added at the end.
Reinforced gloves can be used to control descent, which can also be regulated with pressure on the flexible bell lugs.
If the tube has no side opening, gates can be added. The present invention has the following advantages: Very useful, economical, simple, the equipment can be recovered and is long lasting, it saves lives and in some cases can be used to reduce phobias caused by tall buildings.
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